Precision motion technology supporting LEO optical communication: The role of high-speed steering mirrors.
In this podcast, we will discuss the challenges of free-space optical communication (FSOC) in low Earth orbit (LEO) satellite constellations and the high-speed steering mirror technology that supports it. To achieve stable high-speed optical communication links between satellites, high-precision motion technology that maintains accurate beam control under dynamic orbital conditions and disturbances is essential. In this episode, we will introduce the technical requirements for pointing, acquisition, and tracking (PAT) and disturbance compensation, the design of high-speed steering mirrors suited for the space environment, and solutions considering mass production at the scale of LEO constellations. *Changing the subtitle settings to Japanese will automatically display Japanese subtitles.
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Optical communication link Free Space Optical Communication (FSOC) Next Generation Satellite Network
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The German headquarters, with over 50 years of experience and 30 years as a Japanese corporation, presents new solutions from PI, a company specializing in precision positioning products. We offer the world's number one piezo stages and actuators, as well as hexapod positioning products. Additionally, we are enhancing our lineup of linear motor-driven products and high-precision air bearing stages. In positioning, attention to the foundation is also crucial, and we provide granite bases, enabling us to propose composite systems as well. Please take a look at our diverse lineup that provides cutting-edge technology to production sites around the world, advanced equipment, and various fields of cutting-edge research.






